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Moderating mycorrhizas: arbuscular mycorrhizas modify rhizosphere chemistry and maintain plant phosphorus status within narrow boundaries
Authors:NAZANIN K NAZERI  HANS LAMBERS  MARK TIBBETT  MEGAN H RYAN
Institution:1. School of Plant Biology and Institute of Agriculture, The University of Western Australia, , Perth, Western Australia, 6009 Australia;2. Future Farm Industries Cooperative Research Centre, The University of Western Australia, , Perth, Western Australia, 6009 Australia;3. School of Earth and Environment, The University of Western Australia, , Perth, Western Australia, 6009 Australia;4. Cranfield Soil and AgriFood Institute, Department of Environmental Science and Technology, School of Applied Sciences, Cranfield University, , Cranfield, MK43 0SZ UK
Abstract:Pastures often experience a pulse of phosphorus (P) when fertilized. We examined the role of arbuscular mycorrhizal fungi (AMF) in the uptake of P from a pulse. Five legumes (Kennedia prostrata, Cullen australasicum, Bituminaria bituminosa, Medicago sativa and Trifolium subterraneum) were grown in a moderate P, sterilized field soil, either with (+AMF) or without (?AMF) addition of unsterilized field soil. After 9–10 weeks, half the pots received 15 mg P kg?1 of soil. One week later, we measured: shoot and root dry weights; percentage of root length colonized by AMF; plant P, nitrogen and manganese (Mn) concentrations; and rhizosphere carboxylates, pH and plant‐available P. The P pulse raised root P concentration by a similar amount in uncolonized and colonized plants, but shoot P concentration increased by 143% in uncolonized plants and 53% in colonized plants. Inoculation with AMF decreased the amount of rhizosphere carboxylates by 52%, raised rhizosphere pH by ~0.2–0.7 pH units and lowered shoot Mn concentration by 38%. We conclude that AMF are not simply a means for plants to enhance P uptake when P is limiting, but also act to maintain shoot P within narrow boundaries and can affect nutrient uptake through their influence on rhizosphere chemistry.
Keywords:mycorrhiza‐mediated resource partitioning  phosphorus pulse  rhizosphere carboxylates  rhizosphere pH  root exudates
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